Sustainability of Fossil Fuels

The energy and fuel industries represent an extensive field for the development and implementation of solutions aimed at improving the technological, environmental, and economic performance of technological cycles. In recent years, the issues of ecology and energy security have become especially imp...

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מחבר ראשי: Strizhak, Pavel A.
פורמט: Online
שפה:אנגלית
יצא לאור: MDPI - Multidisciplinary Digital Publishing Institute 2021
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גישה מקוונת:35895
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author Strizhak, Pavel A.
author_browse Strizhak, Pavel A.
author_facet Strizhak, Pavel A.
author_sort Strizhak, Pavel A.
collection Directory of Open Access Books
description The energy and fuel industries represent an extensive field for the development and implementation of solutions aimed at improving the technological, environmental, and economic performance of technological cycles. In recent years, the issues of ecology and energy security have become especially important. Energy is firmly connected with all spheres of human economic life but, unfortunately, it also has an extremely negative (often fatal) effect on the environment and public health. Depletion of energy resources, the complexity of their extraction, and transportation are also problems of a global scale. Therefore, it is especially important nowadays to try to take care of nature and think about the resources that are necessary for future generations. For scientific teams in different countries, the development of sustainable and safe technologies for the use of fuels in the energy sector will be a challenge in the coming decades
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publishDate 2021
publishDateRange 2021
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publisherStr MDPI - Multidisciplinary Digital Publishing Institute
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spelling doab-20.500.12854ir-603122024-04-11T15:10:33Z Sustainability of Fossil Fuels Strizhak, Pavel A. TA1-2040 T1-995 soaring of fuel droplets gas robbing shale gas syngas municipal solid waste convection–diffusion equation skeletal mechanism anionic surfactant flow behavior enhanced oil recovery coal processing waste coal consumption forecasting energy production heating disintegration hydrate dissociation linear drift effect injection mode aerosol gas lift rate oil-controlling mode decorated polyacrylamide supercritical CO2 hydraulic fracturing closed-form analytical solution combustion forest fuels oil refining waste methane coal two-component droplet pore structure evaporation droplet holder material coal-water slurry gas lift optimization Bunsen burner improved gravitational search algorithm slurry fuel physical properties trajectories of fuel droplets mechanism reduction Mohr–Coulomb theory enhanced recovery structure evolution combustion chamber fractured reservoir simulation Qikou Sag tectonic coal explosive breakup split factor matrix-fracture transmissibility waste management ignition genetic mechanism Riedel shear biomass laser pulse dual string completion embedded discrete fracture model covert fault zone waste-derived fuel fuel activation transport of tracers grey relational analysis displacement mechanism support vector machine methane hydrate PTV method methane desorption composite fuel water retention in shale gas lift combustion mechanism anthropogenic emission concentration thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology The energy and fuel industries represent an extensive field for the development and implementation of solutions aimed at improving the technological, environmental, and economic performance of technological cycles. In recent years, the issues of ecology and energy security have become especially important. Energy is firmly connected with all spheres of human economic life but, unfortunately, it also has an extremely negative (often fatal) effect on the environment and public health. Depletion of energy resources, the complexity of their extraction, and transportation are also problems of a global scale. Therefore, it is especially important nowadays to try to take care of nature and think about the resources that are necessary for future generations. For scientific teams in different countries, the development of sustainable and safe technologies for the use of fuels in the energy sector will be a challenge in the coming decades 2021-02-12T04:56:59Z 2021-02-12T04:56:59Z 2019-08-28 11:21:27 2019 book 35895 9783039212200 9783039212194 https://directory.doabooks.org/handle/20.500.12854/60312 eng image/jpeg Attribution-NonCommercial-NoDerivatives 4.0 International https://mdpi.com/books/pdfview/book/1413 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-03921-220-0 10.3390/books978-3-03921-220-0 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783039212200 9783039212194 284 open access
spellingShingle TA1-2040
T1-995
soaring of fuel droplets
gas robbing
shale gas
syngas
municipal solid waste
convection–diffusion equation
skeletal mechanism
anionic surfactant
flow behavior
enhanced oil recovery
coal processing waste
coal consumption forecasting
energy production
heating
disintegration
hydrate dissociation
linear drift effect
injection mode
aerosol
gas lift rate
oil-controlling mode
decorated polyacrylamide
supercritical CO2
hydraulic fracturing
closed-form analytical solution
combustion
forest fuels
oil refining waste
methane
coal
two-component droplet
pore structure
evaporation
droplet holder material
coal-water slurry
gas lift optimization
Bunsen burner
improved gravitational search algorithm
slurry fuel
physical properties
trajectories of fuel droplets
mechanism reduction
Mohr–Coulomb theory
enhanced recovery
structure evolution
combustion chamber
fractured reservoir simulation
Qikou Sag
tectonic coal
explosive breakup
split factor
matrix-fracture transmissibility
waste management
ignition
genetic mechanism
Riedel shear
biomass
laser pulse
dual string completion
embedded discrete fracture model
covert fault zone
waste-derived fuel
fuel activation
transport of tracers
grey relational analysis
displacement mechanism
support vector machine
methane hydrate
PTV method
methane desorption
composite fuel
water retention in shale
gas lift
combustion mechanism
anthropogenic emission concentration
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
Strizhak, Pavel A.
Sustainability of Fossil Fuels
title Sustainability of Fossil Fuels
title_full Sustainability of Fossil Fuels
title_fullStr Sustainability of Fossil Fuels
title_full_unstemmed Sustainability of Fossil Fuels
title_short Sustainability of Fossil Fuels
title_sort sustainability of fossil fuels
topic TA1-2040
T1-995
soaring of fuel droplets
gas robbing
shale gas
syngas
municipal solid waste
convection–diffusion equation
skeletal mechanism
anionic surfactant
flow behavior
enhanced oil recovery
coal processing waste
coal consumption forecasting
energy production
heating
disintegration
hydrate dissociation
linear drift effect
injection mode
aerosol
gas lift rate
oil-controlling mode
decorated polyacrylamide
supercritical CO2
hydraulic fracturing
closed-form analytical solution
combustion
forest fuels
oil refining waste
methane
coal
two-component droplet
pore structure
evaporation
droplet holder material
coal-water slurry
gas lift optimization
Bunsen burner
improved gravitational search algorithm
slurry fuel
physical properties
trajectories of fuel droplets
mechanism reduction
Mohr–Coulomb theory
enhanced recovery
structure evolution
combustion chamber
fractured reservoir simulation
Qikou Sag
tectonic coal
explosive breakup
split factor
matrix-fracture transmissibility
waste management
ignition
genetic mechanism
Riedel shear
biomass
laser pulse
dual string completion
embedded discrete fracture model
covert fault zone
waste-derived fuel
fuel activation
transport of tracers
grey relational analysis
displacement mechanism
support vector machine
methane hydrate
PTV method
methane desorption
composite fuel
water retention in shale
gas lift
combustion mechanism
anthropogenic emission concentration
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
topic_facet TA1-2040
T1-995
soaring of fuel droplets
gas robbing
shale gas
syngas
municipal solid waste
convection–diffusion equation
skeletal mechanism
anionic surfactant
flow behavior
enhanced oil recovery
coal processing waste
coal consumption forecasting
energy production
heating
disintegration
hydrate dissociation
linear drift effect
injection mode
aerosol
gas lift rate
oil-controlling mode
decorated polyacrylamide
supercritical CO2
hydraulic fracturing
closed-form analytical solution
combustion
forest fuels
oil refining waste
methane
coal
two-component droplet
pore structure
evaporation
droplet holder material
coal-water slurry
gas lift optimization
Bunsen burner
improved gravitational search algorithm
slurry fuel
physical properties
trajectories of fuel droplets
mechanism reduction
Mohr–Coulomb theory
enhanced recovery
structure evolution
combustion chamber
fractured reservoir simulation
Qikou Sag
tectonic coal
explosive breakup
split factor
matrix-fracture transmissibility
waste management
ignition
genetic mechanism
Riedel shear
biomass
laser pulse
dual string completion
embedded discrete fracture model
covert fault zone
waste-derived fuel
fuel activation
transport of tracers
grey relational analysis
displacement mechanism
support vector machine
methane hydrate
PTV method
methane desorption
composite fuel
water retention in shale
gas lift
combustion mechanism
anthropogenic emission concentration
thema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technology
url 35895
work_keys_str_mv AT strizhakpavela sustainabilityoffossilfuels